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Articles

Application of simulated annealing in a rectangular fin with variable heat transfer coefficient

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Pages 1352-1367 | Received 19 Jul 2012, Accepted 31 Dec 2012, Published online: 29 Jan 2013

References

  • Kern QD, Kraus DA. Extended surface heat transfer. New York: McGraw-Hill; 1972.
  • Liaw SP, Yeh RH. Fins with surface dependent surface heat flux-I: single heat transfer mode. Int. J. Heat Mass Transfer. 1994;37:1509–1515.
  • Dul’kin IN, Garas’ko GI. Analytical solutions of 1D heat conduction problem for a single fin with temperature dependent heat transfer coefficient-I: closed-form inverse solution. Int. J. Heat Mass Transfer. 2002;45:1895–1903.
  • Chang MH. A decomposition solution for fins with temperature dependent surface heat flux. Int. J. Heat Mass Transfer. 2005;48:1819–1824.
  • Kundu B, Bhanja D. An analytical prediction for performance and optimum design analysis of porous fins. Int. J. Refrig. 2011;34:337–352.
  • Adomian G. Solving frontier problems in physics: the decomposition method. Dordrecht: Kluwer Academic; 1994.
  • Pue-on P, Viriyapong N. Modified Adomian decomposition method for solving particular third-order ordinary differential equations. Appl. Math. Sci. 2012;6:1463–1469.
  • Ozisik MN, Orlande HRB. Inverse heat transfer. New York: Taylor and Francis; 2000.
  • Huang CH, Wang DM, Chen HM. Prediction of local thermal contact conductance in plate finned-tube heat exchangers. Inverse Probl. Sci. Eng. 1999;7:119–141.
  • Chen WL, Yang YC, Lee HL. Inverse problem in determining convection heat transfer coefficient of an annular fin. Energy Convers. Manage. 2007;48:1081–1088.
  • Das R. A simplex search method for a conductive-convective fin with variable conductivity. Int. J. Heat Mass Transfer. 2011;54:5001–5009.
  • Azimi A, Bamdad K, Ahmadikia H. Inverse hyperbolic heat conduction in fins with arbitrary profiles. Numer. Heat Transfer A. 2012;61:220–240.
  • Das R, Dutta PP. Application of simulated annealing for simultaneous estimation of parameters in a cylindrical fin. Numer. Heat Transfer A. 2012;61:699–716.
  • De Jong KA. Evolutionary computation: a unified approach. Cambridge, MA: MIT Press; 2006.
  • Das R. A simulated annealing-based inverse computational fluid dynamics model for unknown parameter estimation in fluid flow problem. Int. J. Comput. Fluid Dyn. 2012;26:499–513.
  • Liu FB. A modified genetic algorithm for solving the inverse heat transfer problem of estimating plan heat source. Int. J. Heat Mass Transfer. 2008;51:3745–3752.
  • Chopade RP, Agnihotri E, Singh AK, Kumar A, Uppaluri R, Mishra SC, Mahanta P. Application of a particle swarm algorithm for parameter retrieval in a transient conduction-radiation problem. Numer. Heat Transfer A. 2011;59:672–692.
  • Fainekos GE, Giannakoglou KC. Inverse design of airfoils based on a novel formulation of the ant colony optimization method. Inverse Probl. Sci. Eng. 2003;11:21–38.
  • Kirkpatrick S, Gelatt CD Jr, Vecchi MP. Optimization by simulated annealing. Science. 1983;220:671–680.
  • Rodrigues PPGW, González YM, de Sousa EP, Neto FDM. Evaluation of dispersion parameters for River São Pedro, Brazil, by the simulated annealing method. Inverse Probl. Sci. Eng. 1999. Doi: 10.1080/17415977.2012.665907.
  • Metropolis N, Rosenbluth AW, Rosenbluth MN, Teller AH. Equation of state calculations by fast computing machines. J. Chem. Phys. 1953;21:1087–1092.
  • Beck JV, Dinwiddie RB. Parameter estimation method for flash thermal diffusivity with two different heat transfer coefficients; Proceedings of 23rd International Thermal Conductivity Conference. Berlin: Springer; 1996.
  • Cen H, Lu R, Dolen K. Optimization of inverse algorithm for estimating the optical properties of biological materials using spatially-resolved diffuse reflectance. Inverse Probl. Sci. Eng. 2010;18:853–872.

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